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在去大脑猫中,通过短暂的突触输入维持运动神经元兴奋性的变化。

Maintained changes in motoneuronal excitability by short-lasting synaptic inputs in the decerebrate cat.

作者信息

Crone C, Hultborn H, Kiehn O, Mazieres L, Wigström H

机构信息

Department of Neurophysiology, Panum Institute, University of Copenhagen, Denmark.

出版信息

J Physiol. 1988 Nov;405:321-43. doi: 10.1113/jphysiol.1988.sp017335.

Abstract
  1. During investigation of the tonic stretch reflex in the unanaesthetized decerebrate cat we observed that a short train of impulses in Ia afferents from the soleus muscle (or its synergists) may cause a prolonged activity in the soleus muscle as judged by EMG and tension recordings. This excitability increase, which outlasted the stimulus train, could stay virtually constant during long periods (even minutes), but could be terminated at any time by a train of impulses in, for example, the peroneal nerve. 2. Gradation of the strength of stimulation and the duration of the train of impulses show that the amount of maintained excitability increase depends-within some limits-on the total amount of Ia impulses. 3. In paralysed preparations a short train of impulses in Ia afferents from any part of the triceps surae, caused a maintained increase of the efferent activity in the nerves to triceps surae and a maintained increase of the triceps surae monosynaptic test reflex. These experiments demonstrate the existence of a central mechanism (in the spinal cord and/or the brain stem), which is responsible for the maintained excitability increase seen in motoneurones to the homonymous and synergic muscles. 4. In acute spinal preparations it was not possible to demonstrate any long-lasting excitability increase by a train of Ia impulses. Following intravenous administration of the serotonin precursor 5-hydroxytryptophan, mimicking the tonic activity of these pathways in the decerebrate state, it was again possible to elicit the long-lasting excitability increase by a train of impulses in Ia afferents. A subsequent I.V. injection of methysergide (a serotonin receptor blocker) abolished the long-lasting excitability increase. This set of experiments demonstrates that the basic mechanism responsible for the maintained excitability increase is located at segmental level, and involves serotonergic systems. 5. It was demonstrated that activation of several ipsilateral and crossed reflex pathways by trains of impulses in cutaneous or high-threshold muscle afferents could trigger a maintained excitability increase of those motoneurone pools which were activated by the stimulation. Trains of stimuli to facilitatory regions in the brain stem could also cause a long-lasting excitability increase of motoneurones. Furthermore, activation of all reflex pathways which mediate postsynaptic inhibition to a motor nucleus (including recurrent inhibition via Renshaw cells) could terminate the prolonged excitability increase of that particular motor nucleus.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 在对未麻醉的去大脑猫的强直牵张反射进行研究期间,我们观察到,根据肌电图和张力记录判断,来自比目鱼肌(或其协同肌)的Ia传入纤维中的短串冲动可能会导致比目鱼肌出现长时间的活动。这种兴奋性增加在刺激串结束后仍持续存在,在很长一段时间(甚至数分钟)内实际上可以保持恒定,但可以通过例如腓总神经中的一串冲动在任何时候终止。2. 刺激强度和冲动串持续时间的分级表明,在一定限度内,保持的兴奋性增加量取决于Ia冲动的总量。3. 在麻痹的标本中,来自腓肠三头肌任何部位的Ia传入纤维中的短串冲动,会导致腓肠三头肌神经传出活动的持续增加以及腓肠三头肌单突触测试反射的持续增加。这些实验证明存在一种中枢机制(位于脊髓和/或脑干),它负责运动神经元对同名肌和协同肌所表现出的兴奋性持续增加。4. 在急性脊髓标本中,通过一串Ia冲动无法证明有任何长期的兴奋性增加。静脉注射血清素前体5-羟色氨酸,模拟去大脑状态下这些通路的紧张性活动后,再次通过Ia传入纤维中的一串冲动能够引发长期的兴奋性增加。随后静脉注射麦角新碱(一种血清素受体阻滞剂)消除了这种长期的兴奋性增加。这组实验表明,负责兴奋性持续增加的基本机制位于节段水平,且涉及血清素能系统。5. 已证明,通过皮肤或高阈值肌肉传入纤维中的冲动串激活几条同侧和交叉反射通路,可触发那些因刺激而被激活的运动神经元池的兴奋性持续增加。对脑干易化区的刺激串也可导致运动神经元的长期兴奋性增加。此外,激活所有介导对运动核的突触后抑制的反射通路(包括通过闰绍细胞的回返抑制)可终止该特定运动核的长时间兴奋性增加。(摘要截断于400字)

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